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首页> 外文期刊>EURASIP journal on advances in signal processing >Preamble-based channel estimation in single-relay networks using FBMC/OQAM
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Preamble-based channel estimation in single-relay networks using FBMC/OQAM

机译:使用FBMC / OQAM的单中继网络中基于前导的信道估计

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摘要

Preamble-based channel estimation in filter bank-based multicarrier (FBMC) systems using offset quadrature amplitude modulation (OQAM) has been extensively studied in the last few years, due to the many advantages this modulation scheme can offer over cyclic prefix (CP)-based orthogonal frequency division multiplexing (OFDM) and in view of the interesting challenges posed on the channel estimator by the interference effect inherent in such an FBMC system. In particular, preambles of short duration and of both the block (full) and comb (sparse) types were designed so as to minimize the channel estimation mean squared error (MSE) subject to a given transmit energy. In the light of the important role that relay-based cooperative networks are expected to play in future wireless communication systems, it is of interest to consider FBMC/OQAM, and in particular questions associated to preamble-based channel estimation, in such a context as well. The goal of this paper is to address these problems and come up with optimal solutions that extend existing results in a single relay-based cooperative network. Both low and medium frequency selective channels are considered. In addition to optimal preamble and estimator design, the equalization/detection task is studied, shedding light to a relay-generated interference effect and proposing a simple way to come over it. The reported simulation results corroborate the analysis and reveal interesting behavior with respect to channel frequency selectivity and signal-to-noise ratio.
机译:近年来,由于采用了偏移正交幅度调制(OQAM),在基于滤波器组的多载波(FBMC)系统中,基于前同步码的信道估计已得到了广泛研究,这是由于该调制方案具有许多优于循环前缀(CP)的优势-基于这种正交频分复用(OFDM)技术,并且鉴于这种FBMC系统固有的干扰效应给信道估计器带来了有趣的挑战。特别是,设计了短持续时间以及块(完整)和梳状(稀疏)类型的前同步码,以使受给定发射能量影响的信道估计均方误差(MSE)最小化。鉴于基于中继的协作网络有望在未来的无线通信系统中发挥重要作用,在以下情况下考虑考虑FBMC / OQAM,尤其是与基于前导码的信道估计相关的问题好。本文的目的是解决这些问题,并提出最佳解决方案,以在单个基于中继的协作网络中扩展现有结果。低频和中频选择通道均被考虑。除了最佳的前同步码和估计器设计之外,还研究了均衡/检测任务,将光照射到中继器产生的干扰效应上,并提出一种克服它的简单方法。报告的仿真结果证实了这一分析,并揭示了有关信道频率选择性和信噪比的有趣行为。

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